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血液替代品与微循环中的氧化还原反应。

Blood substitutes and redox responses in the microcirculation.

作者信息

Baldwin Ann L

机构信息

Department of Physiology, College of Medicine, University of Arizona, Tucson, AZ 85724-5051, USA.

出版信息

Antioxid Redox Signal. 2004 Dec;6(6):1019-30. doi: 10.1089/ars.2004.6.1019.

Abstract

Transfusion of hemoglobin-based blood substitutes, designed for their plasma expansion and oxygen transport capabilities, has resulted in some major problems, such as organ dysfunction, during clinical trials. Experimental evidence demonstrates that these hemoglobins damage tissue by producing highly reactive oxygen species. Although cell-free hemoglobin may present a low risk to people with normal redox status, patients who are sick and have a poor antioxidant status may be at risk. Oxidative damage is particularly dangerous in the microcirculation because excess leakage of plasma components into the interstitium will disturb the fluid balance between blood and tissue and alter the kinetics of delivery of intravascularly injected drugs, and endogenous enzymes and hormones, to various tissues. In this review, the redox chemistry of hemoglobin-based blood substitutes is briefly described, and their effects on cultured endothelial cells, and on the exchange properties of the microvasculature, are discussed. Taking into account the possible mechanisms by which oxidative damage can occur, various methods to reduce the deleterious effects of blood substitutes in vivo are evaluated. Finally, several possible cell signaling pathways that are triggered in endothelial cells, in response to modified hemoglobins, are considered in terms of protecting microvascular function.

摘要

基于血红蛋白的血液替代品因其血浆扩容和氧运输能力而被设计用于输血,但在临床试验中却引发了一些重大问题,比如器官功能障碍。实验证据表明,这些血红蛋白会通过产生高活性氧物种来损害组织。尽管无细胞血红蛋白对氧化还原状态正常的人可能风险较低,但患病且抗氧化状态较差的患者可能会面临风险。氧化损伤在微循环中尤其危险,因为血浆成分过多渗漏到间质中会扰乱血液与组织之间的液体平衡,并改变血管内注射的药物、内源性酶和激素向各种组织的输送动力学。在这篇综述中,简要描述了基于血红蛋白的血液替代品的氧化还原化学,并讨论了它们对培养的内皮细胞以及对微循环交换特性的影响。考虑到可能发生氧化损伤的机制,评估了各种减少血液替代品在体内有害影响的方法。最后,从保护微血管功能的角度考虑了在内皮细胞中响应修饰血红蛋白而触发的几种可能的细胞信号通路。

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